A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactantmediated thermal reaction of iron pentacarbonyl and an oxidizer has been conducted, which includes size control, anisotropic shape evolution, and crystallographic phase transition of monodisperse iron oxide colloidal nanocrystals. The reaction was monitored via in situ UV-vis spectroscopy, taking advantage of the color change accompanying the iron oxide colloid formation, allowing measurement of the induction time for nucleation. Features of the synthesis such as the size control and reproducibility are related to the occurrence of the observed delayed nucleation process. As a separate source of iron and oxygen is adopted, phase control could als...
Monodisperse and uniform γ-Fe_2O_3 (maghemite) nanocrystals of variable size were prepared by therma...
International audienceWe have investigated the early stages of formation of iron oxide nanoparticles...
© 2016 American Chemical Society.A molecular understanding of the formation of solid phases from sol...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactantmediated t...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactant-mediated t...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactant-mediated t...
Herein, we demonstrate that meticulous and in-depth analysis of the reaction mechanisms of nanoparti...
Herein, we demonstrate that meticulous and in-depth analysis of the reaction mechanisms of nanoparti...
We studied the kinetics of the formation of iron oxide nanocrystals obtained from the solution-phase...
The formation of inorganic nanoparticles has been understood based on the classical crystallization ...
The formation of inorganic nanoparticles has been understood based on the classical crystallization ...
The synthesis of iron oxide nanoparticles (NPs) by thermal decomposition of iron precursors using ol...
The formation of iron oxide nanoparticles obtained by the thermal decomposition of iron-oleate compl...
The nucleation and growth of water dispersible iron-oxide nanoparticles synthesized by high temperat...
We describe here a chemically controlled pathway for the designed synthesis of iron oxide nanopartic...
Monodisperse and uniform γ-Fe_2O_3 (maghemite) nanocrystals of variable size were prepared by therma...
International audienceWe have investigated the early stages of formation of iron oxide nanoparticles...
© 2016 American Chemical Society.A molecular understanding of the formation of solid phases from sol...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactantmediated t...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactant-mediated t...
A comprehensive study of iron oxide nanocrystal growth through non-hydrolitic, surfactant-mediated t...
Herein, we demonstrate that meticulous and in-depth analysis of the reaction mechanisms of nanoparti...
Herein, we demonstrate that meticulous and in-depth analysis of the reaction mechanisms of nanoparti...
We studied the kinetics of the formation of iron oxide nanocrystals obtained from the solution-phase...
The formation of inorganic nanoparticles has been understood based on the classical crystallization ...
The formation of inorganic nanoparticles has been understood based on the classical crystallization ...
The synthesis of iron oxide nanoparticles (NPs) by thermal decomposition of iron precursors using ol...
The formation of iron oxide nanoparticles obtained by the thermal decomposition of iron-oleate compl...
The nucleation and growth of water dispersible iron-oxide nanoparticles synthesized by high temperat...
We describe here a chemically controlled pathway for the designed synthesis of iron oxide nanopartic...
Monodisperse and uniform γ-Fe_2O_3 (maghemite) nanocrystals of variable size were prepared by therma...
International audienceWe have investigated the early stages of formation of iron oxide nanoparticles...
© 2016 American Chemical Society.A molecular understanding of the formation of solid phases from sol...